4.8 Article

Room-Temperature Skyrmion Shift Device for Memory Application

Journal

NANO LETTERS
Volume 17, Issue 1, Pages 261-268

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.6b04010

Keywords

Skyrmion; shift memory device; room temperature; thin films; spin-orbit torque

Funding

  1. Spins and Heat in Nanoscale Electronic Systems (SHINES), an Energy Frontier Research Center - U.S. Department of Energy (DOE), Office of Science, Basic Energy Sciences (BES) [SC0012670]
  2. C-SPIN, a six center of STARnet, a Semiconductor Research Corporation program
  3. FAME, a six center of STARnet, a Semiconductor Research Corporation program - MARCO
  4. DARPA
  5. National Science Foundation [ECCS 1611570]
  6. Nano-systems Engineering Research Center for Translational Applications of Nanoscale Multiferroic Systems (TANMS) Cooperative Agreement [EEC-1160504]

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Magnetic skyrmions are intensively explored for potential applications in ultralow-energy data storage and computing. To create practical skyrmionic memory devices, it is necessary to electrically create and manipulate these topologically protected information carriers in thin films, thus realizing both writing and addressing functions. Although room-temperature skyrmions have been previously observed, fully electrically controllable skyrmionic memory devices, integrating both of these functions, have not been developed to date. Here, we demonstrate, a room-temperature skyrmion shift memory device, where individual skyrmions are controllably generated and shifted using current-induced spin orbit torques. Particularly, it is shown that one can select the device operation mode in between (i) writing new single skyrmions or (ii) shifting existing skyrmions by controlling the magnitude and duration of current pulses. Thus, we electrically realize both writing and addressing of a stream of skyrmions in the device. This prototype demonstration brings skyrmions closer to real-world computing applications.

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